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Updated: Dec 26, 2025

Microbiota Analysis Using Two-step PCR and Next-generation 16S rRNA Gene Sequencing
Published on: October 15, 2019
Links between metabolic syndrome and the microbiome
1Department of Anthropology, Dartmouth College, Hanover, NH, USA.
Abstract:
Metabolic syndrome (MetS) is a cluster of harmful conditions which occur together, such as insulin resistance, abdominal obesity, and hypertension. The global prevalence of MetS is growing rapidly, with some estimates suggesting over one billion people worldwide experience increased morality and disease rates linked with this syndrome. One possible factor contributing to MetS risk is changes in microbiome composition. Approximately 100 trillion bacteria and other microbes reside in the human intestinal tract, collectively termed the gut microbiome. Humans and microbes share a long evolutionary history, with many of these microbes influencing human health outcomes. However, environmental conditions have changed dramatically with human technological innovations; many of these changes (e.g., diets high in processed foods and sedentary lifestyles) appear to impact human-microbe relationships. In general, recent changes in diet and activity patterns have been linked to decreased microbiome diversity, elevating inflammation and metabolic disease risk and likely promoting the development of MetS. Targeting patient diet or exercise patterns may therefore help doctors better treat patients suffering from MetS. Still, additional work is needed to determine how the microbiome responds to changes in patient activity and diet patterns across culturally and biologically diverse human populations.
Insights
Metabolic syndrome (MetS) risk may increase with changes in the gut microbiome due to modern lifestyles. Targeting diet and exercise could help manage MetS by influencing these microbial communities.
Area of Science:
- Microbiome research
- Metabolic health
- Human-microbe interactions
Background:
- Metabolic syndrome (MetS) is a growing global health concern, characterized by conditions like insulin resistance, obesity, and hypertension.
- The gut microbiome, comprising trillions of microbes, plays a crucial role in human health and disease.
- Modern environmental changes, including processed diets and sedentary lifestyles, are impacting the human-microbe relationship.
Observation:
- Decreased microbiome diversity is linked to increased inflammation and metabolic disease risk.
- These changes in gut microbial composition are potential contributors to the development of MetS.
- Human technological innovations have significantly altered environmental conditions affecting microbial communities.
Findings:
- Changes in diet and activity patterns are associated with reduced microbiome diversity.
- This reduction in diversity may promote inflammation and elevate the risk of metabolic diseases.
- The gut microbiome's response to lifestyle modifications requires further investigation across diverse populations.
Implications:
- Interventions targeting patient diet and exercise may offer novel therapeutic strategies for MetS.
- Understanding microbiome dynamics is crucial for developing personalized MetS treatments.
- Further research is needed to explore microbiome adaptations in various human populations and environments.
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